MHD flow and heat transfer of a micropolar fluid over a stretching surface with heat generation (absorption) and slip velocity

In this work, the effects of slip velocity on the flow and heat transfer for an electrically conducting micropolar fluid over a permeable stretching surface with variable heat flux in the presence of heat generation (absorption) and a transverse magnetic field are investigated. The governing partial...

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Published inJournal of the Egyptian Mathematical Society Vol. 20; no. 1; pp. 20 - 27
Main Authors Mahmoud, Mostafa A.A., Waheed, Shimaa E.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.04.2012
SpringerOpen
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Abstract In this work, the effects of slip velocity on the flow and heat transfer for an electrically conducting micropolar fluid over a permeable stretching surface with variable heat flux in the presence of heat generation (absorption) and a transverse magnetic field are investigated. The governing partial differential equations describing the problem are converted to a system of non-linear ordinary differential equations by using the similarity transformation, which is solved numerically using the Chebyshev spectral method. The effects of the slip parameter on the flow, micro-rotation and temperature profiles as well as on the local skin-friction coefficient, the wall couple stress and the local Nusselt number are presented graphically. The numerical results of the local skin-friction coefficient, the wall couple stress and the local Nusselt number are given in a tabular form and discussed.
AbstractList In this work, the effects of slip velocity on the flow and heat transfer for an electrically conducting micropolar fluid over a permeable stretching surface with variable heat flux in the presence of heat generation (absorption) and a transverse magnetic field are investigated. The governing partial differential equations describing the problem are converted to a system of non-linear ordinary differential equations by using the similarity transformation, which is solved numerically using the Chebyshev spectral method. The effects of the slip parameter on the flow, micro-rotation and temperature profiles as well as on the local skin-friction coefficient, the wall couple stress and the local Nusselt number are presented graphically. The numerical results of the local skin-friction coefficient, the wall couple stress and the local Nusselt number are given in a tabular form and discussed.
Author Waheed, Shimaa E.
Mahmoud, Mostafa A.A.
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Issue 1
Keywords MHD
Chebyshev spectral method
Slip velocity
Heat generation (absorption)
Stretching surface
Micropolar fluid
Language English
License http://creativecommons.org/licenses/by-nc-nd/4.0
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Snippet In this work, the effects of slip velocity on the flow and heat transfer for an electrically conducting micropolar fluid over a permeable stretching surface...
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SubjectTerms Chebyshev spectral method
Heat generation (absorption)
MHD
Micropolar fluid
Slip velocity
Stretching surface
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Title MHD flow and heat transfer of a micropolar fluid over a stretching surface with heat generation (absorption) and slip velocity
URI https://dx.doi.org/10.1016/j.joems.2011.12.009
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